KR20100002479U - Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air. - Google Patents

Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air. Download PDF

Info

Publication number
KR20100002479U
KR20100002479U KR2020080011495U KR20080011495U KR20100002479U KR 20100002479 U KR20100002479 U KR 20100002479U KR 2020080011495 U KR2020080011495 U KR 2020080011495U KR 20080011495 U KR20080011495 U KR 20080011495U KR 20100002479 U KR20100002479 U KR 20100002479U
Authority
KR
South Korea
Prior art keywords
generator
wind
dust collector
wind power
wind turbine
Prior art date
Application number
KR2020080011495U
Other languages
Korean (ko)
Inventor
송경애
박길복
Original Assignee
송경애
박길복
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 송경애, 박길복 filed Critical 송경애
Priority to KR2020080011495U priority Critical patent/KR20100002479U/en
Publication of KR20100002479U publication Critical patent/KR20100002479U/en

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0039Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with flow guiding by feed or discharge devices
    • B01D46/0047Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with flow guiding by feed or discharge devices for discharging the filtered gas
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D3/00Wind motors with rotation axis substantially perpendicular to the air flow entering the rotor 
    • F03D3/04Wind motors with rotation axis substantially perpendicular to the air flow entering the rotor  having stationary wind-guiding means, e.g. with shrouds or channels
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D3/00Wind motors with rotation axis substantially perpendicular to the air flow entering the rotor 
    • F03D3/06Rotors
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
    • Y02A50/2351Atmospheric particulate matter [PM], e.g. carbon smoke microparticles, smog, aerosol particles, dust
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Wind Motors (AREA)

Abstract

본 발명은 풍력을 이용하여 전기를 생산하는 발전용량이 10kW이하인 소형풍력발전기에 관한 것으로, 산업현장에서 발생되는 입자상물질을 송풍기에서 발생되는 기계적공기를 이용하여 후드에서 포집한후 덕트를 통해 공기와 함께 집진기 내부로 이송시켜 공기와 분리시키고 분리된 공기는 집진기 후단부의 굴뚝을 통해 대기로 배출되는데, 이때 배출되어 버려지는 공기의 풍력을 이용하여 풍력발전기를 작동시켜 발전기에서 발생되는 전기를 충전콘트롤러와 AC/DC 인버터등을 통해 축전지에 축전하여 전동기 및 전구등의 조명용 전력으로 사용할수 있도록 하여 신재생에너지 발생 및 산업현장의 소비전력 감소와 화석연료 사용 절감으로 온실가스인 이산화탄소(CO2) 저감에도 기여를 하는 효과가 있다.The present invention relates to a small wind power generator having a power generation capacity of less than 10kW to generate electricity by using wind power, and collects particulate matter generated at an industrial site from a hood using mechanical air generated from a blower, It is transported together with the dust collector and separated from the air, and the separated air is discharged to the atmosphere through the chimney at the rear end of the dust collector. At this time, the wind generator is operated by using the wind power of the exhausted air, and the electricity generated from the generator It can be used as lighting power for electric motors and light bulbs by accumulating in storage batteries through AC / DC inverters, etc. to reduce CO 2 , which is a greenhouse gas, by generating new renewable energy, reducing power consumption at industrial sites, and reducing the use of fossil fuels. There is a contributing effect.

집진기, 소형풍력발전, 풍력발전기, 재생에너지, 이산화탄소(CO2), 온실가스 Dust collector, small wind power plant, wind power generator, renewable energy, carbon dioxide (CO2), greenhouse gas

Description

배출공기로 재생에너지 전기를 생산하도록 풍력발전장치가 일체된 풍력발전집진기.{omitted}Wind generators with integrated wind turbines to produce renewable energy electricity from exhaust air. {Omitted}

도 1은 기존의 집진기 설치도1 is a conventional dust collector installation diagram

도 2는 본 발명의 배출공기로 재생에너지 전기를 생산하도록 풍력발전장치가 일체된 풍력발전집진기의 블럭구성도Figure 2 is a block diagram of a wind turbine generator integrated with a wind power generator to produce renewable energy electricity to the exhaust air of the present invention

도 3은 본 발명의 배출공기로 재생에너지 전기를 생산하도록 풍력발전장치가 일체된 풍력발전집진기의 개략도3 is a schematic view of a wind turbine with a wind turbine integrated to produce renewable energy electricity with exhaust air of the present invention;

*도면의 주요 부분에 대한 부호의 설명** Explanation of symbols for main parts of drawing *

101:굴뚝 102:배출공기출구101: chimney 102: exhaust air outlet

103:풍력발생관 104:회전날개103: wind power generating tube 104: rotary wing

105:배출공기입구 106:집진기105: exhaust air inlet 106: dust collector

107:풍력발전장치 108:발전기107: wind power generator 108: generator

109:충전콘트롤러 110:인버터109: charging controller 110: inverter

111:축전지111: storage battery

본 발명은 풍력을 이용하여 전기를 생산하는 발전용량이 10kW이하인 소형풍력발전기에 관한 것이다. 현재 설치되는 소형풍력발전기는 발생풍속(풍속 10m/ses이하)빈도가 높은곳에 설치되어야 하며, 설계시 풍향추종과 강풍회피 제어시스템이 고려되어야한다. 또한 회전날개에는 인장. 굽힘 및 절단의 합성력이 가해지기 때문에 강도상의 제약으로부터 정격회전수와 허용최대회전수가 정해져 회전수를 초과하지 않도록 정격회전수 이하로 유지해야 한다. 무엇보다도 소형풍력발전기는 원하는 인입양만큼 풍력에너지를 얻을수 있다면, 그에 상응하는 출력을 얻을수 있겠지만 소형풍력발전기는 일반적으로 민가나 시내에 설치되는 경우가 많기 때문에 이상적인 풍량을 확보하기가 쉽지 않다.The present invention relates to a small wind power generator having a power generation capacity of 10 kW or less to generate electricity using wind power. Small wind power generators that are currently installed should be installed at high frequency of generated wind speed (wind speed less than 10m / ses) and wind direction tracking and strong wind avoidance control system should be considered in design. In addition, the tension on the rotor blades. Since the combined forces of bending and cutting are applied, the rated speed and the maximum allowable speed should be determined by the constraints of strength and kept below the rated speed so as not to exceed the speed. Above all, if the small wind power generator can get the wind energy as much as the desired amount of input, it can get the corresponding output, but the small wind power generator is generally installed in the private house or the city, so it is not easy to secure the ideal wind volume.

실제의 자연의 바람은, 항상 풍속이 변화하고, 또 일 격차나 계절 격차도 큰 것이 일반적이고, 풍속이 일정하고 안정된 바람이 얻어지는 환경은 없습니다. 따라서, 풍력 발전기의 발전 특성도 시간 변동이나 일 격차, 계절 격차가 대단히 큰 발전 특성인 것이 단점입니다.Wind of the natural wind always changes, and it is common that the daily gap and the seasonal gap are also large, and there is no environment where a stable wind is obtained with constant wind speed. Therefore, the disadvantage is that the power generation characteristics of wind generators are also very large in time variation, daily variation, and seasonal variation.

풍력 발전 시스템을 계획하는 데 있어서, 조금이라도 큰 풍속이 얻어지는 장소를 선정하는 것은 매우 중요한 것입니다. 또 그렇지 않아도 변동이 심한 발전 특성의 풍력 발전이므로, 풍속이나 풍향의 변동이 적은 안정적인 바람이 얻어지는 장소를 선택하는 것도 중요하고, 특히 풍향 변동이 큰 장소로는, 풍차에 손상도 비약적으로 커지고, 수명을 줄이는 것뿐만 아니라 매우 위험합니다.In planning a wind power generation system, it is very important to select a location where even a slight wind speed is obtained. In addition, it is important to select a place where stable wind with low fluctuations in wind speed and wind direction is obtained because it is wind power with fluctuating power generation characteristics. It is very dangerous as well as reducing it.

풍속60m/s의 강풍에 견디는 풍력 발전기이라도, 상당한 강풍시에 여러가지 물건이 흩날려서, 회전중의 날개로 충돌 하면, 날개가 파손해 버립니다. 또 어떤 원인에 의해 풍력 발전기의 지주가 쓰러지거나, 풍력 발전기 그 자체가 탈락해 버릴 가능성도 있습니다.Even if a wind generator withstands strong winds of 60m / s, various objects are scattered at the time of considerable strong winds and the wings will be damaged if they collide with the rotating blades. There is also a possibility that the propeller of the wind generator will fall or the wind generator itself will fall off for some reason.

소형 풍력 발전기는, 날개가 경량화 되고, 만에 하나 파손해 주위로 파손 제품의 부속들이 날아가면 위험 할 수 있기에 높은 위치에 풍력 발전기를 설치하거나, 혹은 낮은 곳이면, 사람이 접근하지 않도록 관리된 부지 내에 설치하는 등의 고려가 필요합니다.Small wind generators can be dangerous if the wings are lighter, and only one bay is broken and parts of the damaged product fly around. Consideration should be given to installation within.

풍속이 크면 클수록 발전량은 비약적으로 늘지만, 바람의 질이 나쁘면 즉, 풍향이 일정하고 있지 않는 바람, 빌딩 사이의 바람, 뿜어 올려, 불어 내리기의 바람 강풍을 들 수 있는데, 어떤 경우도 풍력 발전기에 있어서는 유해한 바람이고, 발전량이 저하하거나, 풍력 발전기의 수명을 현저하게 저하시키는 요인이 됩니다.The higher the wind speed, the greater the amount of power generation, but the worse the quality of the wind, that is, the wind direction is not constant, the wind between the buildings, the wind gusts of blowing up and blowing down, in any case the wind generator This is a harmful wind, and the amount of electricity generated decreases or the life of the wind generator is significantly reduced.

본 발명이 이루고자 하는 기술적 과제는 강풍시에 여러가지 물건이 흩날려서, 날개가 파손해 주위로 파손 제품의 부속들이 날아가면 위험 할 수 있기에 높은 위치에 풍력 발전기를 설치하거나, 혹은 낮은 곳이면, 사람이 접근하지 않도록 관리된 부지 내에 설치하는 등의 고려가 필요치 않으며, 인입양만큼 풍력에너지를 얻을 수 있는, 풍속이나 풍향의 변동이 적은 안정적인 바람을 얻어야 한다. 산업현장에서 발생되는 입자상물질을 송풍기에서 발생되는 기계적공기를 이용하여 후드에서 포집한후 덕트를 통해 공기와 함께 집진기 내부로 이송시켜 공기와 분리시키고 분리된 공기는 집진기 후단부의 굴뚝을 통해 대기로 배출되는데, 이때 굴뚝의 배출풍속이 소음 및 비산등을 고려해 평균 8-15m/ses로 설계되어있어 소형풍력발전에서 요구되는 풍속이나 풍향의 변동이 적은 안정적인 풍력을 8-24시간 얻을수 있는 장소와 구조이므로, 풍력발전기를 굴뚝에 설치 작동시켜 발전기에서 발생되는 전기를 충전콘트롤러와 AC/DC 인버터등을 통해 축전지에 축전하여 전동기 및 전구등의 조명용 전력으로 사용할수 있도록 하여 신재생에너지 발생 및 산업현장의 소비전력 감소와 화석연료 사용 절감으로 온실가스인 이산화탄소(CO2) 저감에도 기여하는 소형풍력발전기를 제공하는데 있다.The technical problem to be solved by the present invention is to install a wind generator in a high position, or if a low place, because it can be dangerous when various objects are scattered during high winds, and the wings are broken and parts of the damaged product fly around. Consideration should not be given to installation in a site that has been managed so as to be inaccessible, and stable winds with less fluctuations in wind speed or direction should be obtained to obtain wind energy as much as the incoming quantity. The particulate matter generated at the industrial site is collected in the hood by using the mechanical air generated at the blower, and then transferred to the dust collector together with the air through the duct to be separated from the air, and the separated air is discharged to the atmosphere through the chimney at the rear end of the dust collector. At this time, the exhaust wind speed of the chimney is designed to average 8-15m / ses in consideration of noise and scattering, so it is a place and structure that can obtain stable wind power with less fluctuation of wind speed or wind direction required for small wind power generation. By installing and operating wind power generators in the chimney to store electricity generated from generators in storage batteries through charging controllers and AC / DC inverters, and to use them as lighting power for electric motors and light bulbs. the power reduction and the use of fossil fuels reducing greenhouse gas carbon dioxide (CO 2) also contributes to a small reduction There is provided a power generator.

본 발명은 상기와 같은 목적을 실현하기 위한 수단으로, 배출공기로 전기를 생산하는 풍력발전집진기에 있어서, 회전날개와 발전기와 충전콘트롤러와 AC/DC 인버터, 축전지를 구비하는 것을 특징으로 한다.The present invention is a means for realizing the above object, characterized in that the wind turbine generator for producing electricity by exhaust air, comprising a rotary blade, a generator, a charging controller, an AC / DC inverter, a storage battery.

상기와 같이 집진기의 굴뚝으로 배출되는 배출공기를 이용한 소형풍력발전기에 의해 생산되는 전기의 과전압 및 과전류를 충전콘트롤러에서 제어하여 안정적으로 생산 되도록 하며, 역기전력 보호회로등을 구성하여 축전지에 축적된 전력이 전동기 및 전구등의 조명에 안정적으로 공급되어 사용되도록 이루어진다.As described above, the overvoltage and overcurrent of electricity produced by the small wind power generator using the exhaust air discharged to the chimney of the dust collector are controlled by the charging controller so as to stably produce the power. It is made to be stably supplied and used for lighting of electric motors and bulbs.

본 발명의 바람직한 실시예를 첨부한 도면에 의해 상세히 설명하면 다음과 같다.Preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.

도 3은 본 발명의 배출공기로 재생에너지 전기를 생산하도록 풍력발전장치가 일체된 풍력발전집진기의 개략도이다.3 is a schematic view of a wind turbine with a wind turbine integrated to produce renewable energy electricity with exhaust air of the present invention.

본 발명에 따른 배출공기로 재생에너지 전기를 생산하도록 풍력발전장치가 일체된 풍력발전집진기는 집진기(106)와 공기배출 굴뚝(101)부가 형성된 집진기(106)에, 집진기(106)의 용량별 굴뚝(101)크기에 맞게 배출공기입구(105)와 배출공기출구(102)가 원형으로 형성된 풍력발생관(103)과 풍력발생관(103) 내부에 회전날개(104)가 위치하고 풍력발생관(103) 외부에 위치하는 발전기(108)의 축에 회전날개(104)의 슬리브부가 끼워져서 핀으로 고정되어 풍력발생관(103)과 일체형으로 조립된 풍력발전장치(107)가 집진기(106)와 공기배출 굴뚝(101) 사이에 연결 설치되고, 충전콘트롤러(108)와 인버터(109)와 축전지(110)가 주요부속품으로 구성된다.The wind power generator which is integrated with the wind power generator to produce renewable energy electricity as exhaust air according to the present invention has a dust collector 106 and an air discharge chimney 101 formed in the dust collector 106, the chimney by capacity of the dust collector 106 Wind turbines 103 and the rotor blades 104 are formed inside the wind turbine 103 and the wind turbine 103 formed in a circular discharge air inlet 105 and the exhaust air outlet 102 in accordance with the size and the wind turbine (103) The wind turbine generator 107, which is integrally assembled with the wind turbine generator 103, is fixed to the sleeve by fitting the sleeve of the rotary blade 104 to the shaft of the generator 108 located outside the dust collector 106 and air. It is connected between the discharge chimney 101, the charging controller 108, the inverter 109 and the storage battery 110 is composed of the main accessories.

이와 같이 이루어진 본 발명에 의한 작동을 설명하면 다음과 같다.Referring to the operation according to the present invention made as described above are as follows.

집진기(107) 가동에 필요한 220V 또는 380V의 상용전원을 공급받아 집진용 송풍기를 작동시키게 되면, 송풍기에서 생성된 공기가 산업현장에서 발생되는 입자상물질을 후드에서 포집흡인한후 덕트를 통해 공기와 함께 집진기(106) 내부로 이송시켜 공기와 분리시키고 분리된 공기는 집진기(106) 후단부의 굴뚝(101)을 통해 대기로 배출되는데, 이때 집진기(106)와 굴뚝(101)사이에 연결 설치된 풍력발전장치(103)의 풍력발생관(103)의 배출공기입구(105)를 통해 인입된 배출공기가 풍력발생관(103)내부의 회전날개(104)에 풍력이 가해져 회전날개(104)가 회전을 하며 발전기(108)를 구동시켜 전기가 생산되고, 일을 마친 배출공기는 배출공기출구(102)와 굴뚝(101)을 통해 대기로 배출된다.When operating the dust collector blower by supplying commercial power of 220V or 380V necessary to operate the dust collector 107, the air generated in the blower collects and absorbs the particulate matter generated in the industrial field from the hood and then flows together with the air through the duct. The dust is separated into the air by transporting into the dust collector 106, and the separated air is discharged to the atmosphere through the chimney 101 at the rear end of the dust collector 106, in which the wind turbine is connected between the dust collector 106 and the chimney 101. Discharge air introduced through the discharge air inlet 105 of the wind turbine 103 of the 103 is applied to the rotary blade 104 inside the wind turbine 103, the rotary blade 104 is rotated Electricity is produced by driving the generator 108, and exhaust air is discharged to the atmosphere through the exhaust air outlet 102 and the chimney 101 when finished.

본 발명의 범위는 위에서 예시한 실시예에 한정되지 않으며, 본 발명의 기술적 사상이 적용된 경우라면 모두 본 발명의 범위에 속한다고 할 것이다.The scope of the present invention is not limited to the above-exemplified embodiments, and if the technical spirit of the present invention is applied, all will be said to belong to the scope of the present invention.

본 발명은 산업현장에 설치되어 사용되고 대기로 버려지는, 무수히 많은 폐배출공기가 풍속이나 풍향의 변동이 적은 안정적인 바람이 얻어질수 있는것에 착안해 그중 입자상물질의 대기오염처리장치인 집진기의 공기배출 굴뚝에 풍력발전기를 설치하여 전기를 생산하므로써,The present invention focuses on the fact that a myriad of waste discharged air installed and used in an industrial site and discarded into the atmosphere can be obtained a stable wind with little fluctuations in wind speed or wind direction. By installing wind power generators in the

1kW 소형풍력발전기로 24시간 집진기가 가동되는곳에 설치하였을 경우, 집진기 1개소에서1kW small wind power generator is installed in the place where the dust collector is operated for 24 hours.

첫째, 1kW X 24시간/일 X 365일/년 = 8,760kW의 전기가 생산되어, 전동기 및 전구등의 조명용 전력으로 사용하여 산업현장의 소비전력 감소와,Firstly, 1kW X 24 hours / day X 365 days / year = 8,760kW of electricity is produced and used as the power for lighting of electric motors and bulbs, reducing the power consumption of industrial sites,

기본요금 100kw X 4,440 = 444,000과 전기요금:55.10(평균단가) X 8,760(사용전력량) = 482,676원 합하여 444,000 + 482,676 = 818,250원/년의 전기요금이 절감되며.The base rate 100kw X 4,440 = 444,000 and the electricity rate: 55.10 (average unit price) X 8,760 (power consumption) = 482,676 won 444,000 + 482,676 = 818,250 won / year will reduce the electricity bill.

둘째, 화석연료의 사용 절감으로 온실가스인 이산화탄소(CO2) 배출량이 3.7TON정도 감소하므로 환경보호에 커다란 기여를 시너지효과가 있다.Second, the use of fossil fuels, reduction of greenhouse gases such as carbon dioxide (CO 2) emissions reduced by 3.7TON, so there is a significant synergy contributing to environmental protection.

Figure 112008504384477-UTM00001
Figure 112008504384477-UTM00001

Claims (1)

집진기(106)와 공기배출 굴뚝(101)부가 형성된 집진기(106)에, 집진기(106)의 용량별 굴뚝(101)크기에 맞게 배출공기입구(105)와 배출공기출구(102)가 원형으로 형성된 풍력발생관(103)과 풍력발생관(103) 내부에 회전날개(104)가 위치하고 풍력발생관(103) 외부에 위치하는 발전기(108)의 축에 회전날개(104)의 슬리브부가 끼워져서 핀으로 고정되어 풍력발생관(103)과 일체형으로 조립된 풍력발전장치(107)와 충전콘트롤러(108)와 인버터(109)와 축전지(110)가 주요부속품으로 구성되는 소형풍력발전기의 풍력발전장치(103)가 집진기(106)와 공기배출 굴뚝(101) 사이에 연결 설치되어, 풍력발전장치(103)의 풍력발생관(103)의 배출공기입구(105)를 통해 인입된 집진을 마친 배출공기가 풍력발생관(103)내부의 회전날개(104)에 풍력이 가해져 회전날개(104)가 회전을 하며 발전기(108)를 구동시켜, 배출공기로 재생에너지 전기를 생산하도록 풍력발전장치가 일체된 풍력발전집진기.In the dust collector 106 having the dust collector 106 and the air discharge chimney 101 formed therein, the discharge air inlet 105 and the discharge air outlet 102 are formed in a circular shape according to the size of the chimney 101 according to the capacity of the dust collector 106. The rotor blade 104 is positioned inside the wind turbine 103 and the wind turbine 103 and the sleeve of the rotor blade 104 is fitted to the shaft of the generator 108 located outside the wind turbine 103. The wind turbine generator of the small wind power generator, which is fixed to the wind turbine generator 103, which is integrally assembled with the wind turbine generator 103, and the charging controller 108, the inverter 109, and the storage battery 110, are configured as main accessories. 103 is installed between the dust collector 106 and the air discharge chimney 101, the exhaust air is finished dust collected through the exhaust air inlet 105 of the wind turbine generator 103 of the wind power generator 103 Wind power is applied to the rotor blade 104 inside the wind turbine generator 103 to rotate the rotor blade 104 and the generator 108 The copper by, the wind turbine generator to produce renewable electrical energy together with the exhaust air wind power precipitator.
KR2020080011495U 2008-08-28 2008-08-28 Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air. KR20100002479U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR2020080011495U KR20100002479U (en) 2008-08-28 2008-08-28 Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR2020080011495U KR20100002479U (en) 2008-08-28 2008-08-28 Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air.

Publications (1)

Publication Number Publication Date
KR20100002479U true KR20100002479U (en) 2010-03-10

Family

ID=44197806

Family Applications (1)

Application Number Title Priority Date Filing Date
KR2020080011495U KR20100002479U (en) 2008-08-28 2008-08-28 Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air.

Country Status (1)

Country Link
KR (1) KR20100002479U (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101024826B1 (en) * 2010-08-31 2011-03-25 주식회사 성지공조기술 Power generating system using of cooling tower ventilation air
KR101130649B1 (en) * 2010-03-15 2012-04-02 삼성중공업 주식회사 System for desulfurization and denitrification of exhaust gas using wind power generation
KR101257815B1 (en) * 2010-09-06 2013-04-29 송민호 Shopping cart, power generation system and method using the shopping cart
KR200473911Y1 (en) * 2012-10-12 2014-08-07 황용규 Waste cleaning apparatus
WO2017190601A1 (en) * 2016-05-02 2017-11-09 刘一凡 Method for purifying atmosphere and purification device using same
WO2021230553A1 (en) * 2020-05-11 2021-11-18 엘지전자 주식회사 Cooling tower and chiller system comprising same

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101130649B1 (en) * 2010-03-15 2012-04-02 삼성중공업 주식회사 System for desulfurization and denitrification of exhaust gas using wind power generation
KR101024826B1 (en) * 2010-08-31 2011-03-25 주식회사 성지공조기술 Power generating system using of cooling tower ventilation air
KR101257815B1 (en) * 2010-09-06 2013-04-29 송민호 Shopping cart, power generation system and method using the shopping cart
KR200473911Y1 (en) * 2012-10-12 2014-08-07 황용규 Waste cleaning apparatus
WO2017190601A1 (en) * 2016-05-02 2017-11-09 刘一凡 Method for purifying atmosphere and purification device using same
WO2021230553A1 (en) * 2020-05-11 2021-11-18 엘지전자 주식회사 Cooling tower and chiller system comprising same

Similar Documents

Publication Publication Date Title
US8362637B2 (en) Method and apparatus for wind energy system
KR20100002479U (en) Wind turbines with integrated wind turbines to produce renewable energy electricity from exhaust air.
US20110089701A1 (en) Methods and apparatus for generating electrical energy based on waste air flow
US20130280072A1 (en) Air-Jet Wind Turbine Generator
GB2481033A (en) Wind turbine with battery-powered motor to assist the rotor in low wind conditions
WO2012026840A1 (en) Method and solar-powered wind plant for producing electric power
Vijayaprabhu et al. Review and comparison of various types of generation using WECS topologies
CN202176461U (en) Wind-light complementary power generation device
JP2005016452A (en) Wind power generation system, wind power generation method and wind power generation device for artificial airflow
CN101691853B (en) Horizontal shaft wind driven generator
CN201330680Y (en) Wind power generation plant of blower
Chong et al. Urban Eco-Greenergy™ hybrid wind-solar photovoltaic energy system and its applications
CN102434399A (en) Chimney power-generating device
CN105019915A (en) Highway tunnel with turbine wind power generation device
KR20110006446U (en) A aerogenerator using the air conditioner
CN202132075U (en) Waste gas power generation device
CN105098955A (en) Environmental-friendly wind and light supplementary power supply air conditioning unit
CN205578188U (en) Wind -force and hand dual installation's electricity generation and energy memory
KR20100004528A (en) Wind power generator using wasted wind
CN204253281U (en) A kind of pipe type aerogenerator
CN101813065A (en) Method for generating power by mine exhaust cyclic utilization
US20110215579A1 (en) Green power generator device
Dare et al. Vehicular Wind Energy Converter (VWEC): A Solution to Sustainable Charging For Electric Vehicles
CN201884205U (en) Automatic wind power generation device for high-rise building
CN201730749U (en) Wind power generating device using suction system

Legal Events

Date Code Title Description
A201 Request for examination
E902 Notification of reason for refusal
E601 Decision to refuse application
E601 Decision to refuse application